Adenoviral-mediated gene transfer to retinal explants during development and degeneration

Jijing Pang1, Mei Cheng, Douglas Stevenson

  • 1Eye Research Institute, Oakland University, 422 Dodge Hall, Rochester, MI 48309-4480, USA.

Insights

Gene therapy for retinitis pigmentosa shows promise in retinal explants from rd mice. Adenovirus-mediated gene transfer is more effective in developing or degenerating retinas, particularly in rd mice.

Area of Science:

  • Ophthalmology
  • Genetics
  • Molecular Biology

Background:

  • Naturally occurring mutations in the cyclic guanosine monophosphate (cGMP) phosphodiesterase (beta-PDE) gene in rod photoreceptors of mice and dogs resemble human retinitis pigmentosa.
  • Gene defects causing photoreceptor degeneration in retinal degenerative (rd) mice can be corrected by wild-type beta-PDE gene transfer.
  • Rapid photoreceptor degeneration in rd mice complicates gene therapy studies, necessitating in vitro models.

Purpose of the Study:

  • To investigate factors influencing viral transduction efficiency in retinal explants from rd mice.
  • To compare adenoviral vector-mediated reporter gene delivery in normal and rd mouse retinas across different ages.
  • To establish a rapid and efficient method for studying gene therapy in retinal degenerative diseases.

Main Methods:

  • Retinal explants from postnatal day (P)2 to P28 control and P2-P42 rd mice were used.
  • Explants were exposed to an adenoviral vector carrying a beta-galactosidase (Lac Z) reporter gene (Ad-CMV-Lac Z).
  • Lac Z gene expression was assessed via histochemical staining and light microscopy.

Main Results:

  • Transduction efficiency was higher in rd mice compared to controls across all examined postnatal days.
  • In normal retinas, Lac Z expression peaked around P7-P8 and declined significantly after P17.
  • Rd mice showed increased transduction efficiency from P2-P7, a dip at P10, and a significant rise between P10-P15, with intense Lac Z expression.

Conclusions:

  • Adenovirus-mediated gene transfer is more attainable in developing or degenerating retinas.
  • Transduction efficiency in rd mice is influenced by the interplay of photoreceptor development, maturation, and degeneration.
  • Significant differences in transduction efficiency between normal and rd mice, especially after P12, highlight the potential of rd models for gene therapy research.

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